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Mitochondrial DNA nucleoids determine mitochondrial genetics and dysfunction
Authors:Robert W Gilkerson  
Affiliation:aDepartment of Neurology, College of Physicians & Surgeons, Columbia University, Russ Berrie Pavilion 307, 1150 St. Nicholas Ave., New York, NY 10032, United States
Abstract:Mitochondrial DNA plays a crucial role in cellular homeostasis; however, the molecular mechanisms underlying mitochondrial DNA inheritance and propagation are only beginning to be understood. To ensure the distribution and propagation of the mitochondrial genome, mitochondrial DNA is packaged into macromolecular assemblies called nucleoids, composed of one or more copies of mitochondrial DNA and associated proteins. We review current research on the mitochondrial nucleoid, including nucleoid-associated proteins, nucleoid dynamics within the cell, potential mechanisms to ensure proper distribution of nucleoids, and the impact of nucleoid organization on mitochondrial dysfunction. The nucleoid is the molecular organizing unit of mitochondrial genetics, and is the site of interactions that ultimately determine the bioenergetic state of the cell as a whole. Current and future research will provide essential insights into the molecular and cellular interactions that cause bioenergetic crisis, and yield clues for therapeutic rescue of mitochondrial dysfunction.
Keywords:Mitochondria  Mitochondrial DNA  Nucleoids  Heteroplasmy  Bioenergetics
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